CN216698124U - Energy storage type electric operation positioning mechanism - Google Patents

Energy storage type electric operation positioning mechanism Download PDF

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Publication number
CN216698124U
CN216698124U CN202220079011.3U CN202220079011U CN216698124U CN 216698124 U CN216698124 U CN 216698124U CN 202220079011 U CN202220079011 U CN 202220079011U CN 216698124 U CN216698124 U CN 216698124U
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energy storage
storage type
type electric
electric operation
connecting plate
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刘丰丰
李涛
闫艳艳
孙生辉
吴晓杭
苗锋
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Jiangsu Daquan Kai Fan Switchgear Co Ltd
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Jiangsu Daquan Kai Fan Switchgear Co Ltd
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Abstract

The utility model discloses an energy storage type electric operation positioning mechanism which comprises an energy storage type electric operation left side plate, an energy storage type electric operation right side plate, a cross beam, a connecting plate, a small housing frame breaker support, a large housing frame breaker support and a bolt. The connecting plate is additionally arranged on the energy storage type electric operator, and when the connecting plate is required to be arranged on the small shell frame circuit breaker, the connecting plate is connected with the second positioning feature through a second groove in the connecting plate; when the circuit breaker needs to be arranged on a large-shell frame, the connecting plate is detached and is directly connected with the second positioning feature through the first groove. The energy storage type electric operation of one specification can be installed on two plastic case circuit breakers, and the universality of the energy storage type electric operation is improved.

Description

一种储能式电操定位机构An energy storage type electric positioning mechanism

技术领域technical field

本实用新型涉及低压电器元器件设备领域,具体是一种储能式电操定位机构。The utility model relates to the field of low-voltage electrical components and equipment, in particular to an energy storage type electric operation positioning mechanism.

背景技术Background technique

在低压电器行业,塑壳断路器的使用过程中,经常能用到储能式电动操作机构(以下简称储能电操)与塑壳断路器一起使用。使用时,储能电操紧挨着塑壳断路器安装在其正上方。通过储能式电操动作,代替传统的手动操作断路器,实现分合闸。In the low-voltage electrical appliance industry, in the process of using the molded case circuit breaker, the energy storage electric operating mechanism (hereinafter referred to as the energy storage electric operation) can often be used together with the molded case circuit breaker. When in use, the energy storage circuit breaker is installed directly above it next to the molded case circuit breaker. Through the energy storage type electric operation, instead of the traditional manual operation circuit breaker, the opening and closing are realized.

现有技术中不同规格的断路器,上面安装的储能式电操规格也不一样,这就需要每一种规格的断路器都需要一种能够对应其规格的储能式电操,使得储能式电操的通用性很低。The circuit breakers of different specifications in the prior art have different specifications of the energy storage type electric operation installed on them. This requires that each type of circuit breaker needs a type of energy storage type electric operation that can correspond to its specifications, so that the energy storage type electric operation can be used. The versatility of electrokinetics is very low.

综上,本实用新型的目标在于实现同一规格的储能式电操与相邻规格的塑壳断路器的安装与定位,使一种规格的储能式电操能够对应两种规格的塑壳断路器,提高储能式电操的通用性。To sum up, the goal of the present utility model is to realize the installation and positioning of the same specification of energy-storage electric operation and the adjacent specification of molded case circuit breaker, so that one specification of energy-storage electric operation can correspond to two specifications of molded case. Circuit breaker, improve the versatility of energy storage electric operation.

实用新型内容Utility model content

为了实现上述目标,本实用新型通过以下技术方案予以实现:In order to achieve the above-mentioned goals, the utility model is realized through the following technical solutions:

一种储能式电操定位机构,包括储能式电操左侧板、储能式电操右侧板、横梁、连接板、小壳架断路器支架、大壳架断路器支架、螺栓,所述横梁设置在储能式电操左侧板和储能式电操右侧板之间,所述连接板与横梁连接,所述电操左侧板和储能式电操右侧板上设置有第一凹槽,所述连接板上设置有第二凹槽。An energy storage type electric operation positioning mechanism, comprising an energy storage type electric operation left side plate, an energy storage type electric operation right side plate, a beam, a connecting plate, a small frame circuit breaker bracket, a large frame circuit breaker bracket, and bolts, The beam is arranged between the left side plate of the energy storage type electric operation and the right side plate of the energy storage type electric operation, the connecting plate is connected with the beam, the left side plate of the electric operation and the right side plate of the energy storage type electric operation. A first groove is provided, and a second groove is provided on the connecting plate.

进一步地,所述储能式电操左侧板和储能式电操右侧板上还设置有横梁安装孔。Further, the left side plate of the energy storage type electric operation and the right side plate of the energy storage type electric operation are also provided with beam mounting holes.

进一步地,所述横梁上设置有两个螺纹孔且两端设置有凸起,所述横梁通过凸起设置在横梁安装孔上。Further, two threaded holes are provided on the beam and protrusions are provided at both ends, and the beam is arranged on the mounting hole of the beam through the protrusions.

进一步地,所述连接板上设置有两个通孔且两侧设置有第一定位特征。Further, two through holes are provided on the connecting plate and first positioning features are provided on both sides.

进一步地,所述螺栓具有两个。Further, the bolts have two.

进一步地,所述连接板的第一定位特征设置在第一凹槽内。Further, the first positioning feature of the connecting plate is arranged in the first groove.

进一步地,所述连接板通过螺栓设置在横梁的螺纹孔上。Further, the connecting plate is arranged on the threaded hole of the beam through bolts.

进一步地,所述小壳架断路器支架、大壳架断路器支架上设置有第二定位特征,所述大壳架断路器支架比小壳架断路器支架型号大一号。Further, a second positioning feature is provided on the small-frame circuit breaker bracket and the large-frame circuit breaker bracket, and the large-frame circuit breaker bracket is one size larger than the small-frame circuit breaker bracket.

进一步地,所述小壳架断路器支架通过第二定位特征设置在第二凹槽上,当储能式电操与小壳架断路器连接时,将第二凹槽与小壳架断路器支架上的第二定位特征对应即可。Further, the small frame circuit breaker bracket is arranged on the second groove through the second positioning feature, and when the energy storage electric operation is connected with the small frame circuit breaker, the second groove is connected to the small frame circuit breaker. The second positioning feature on the bracket only needs to correspond.

进一步地,所述大壳架断路器支架通过第二定位特征设置在第一凹槽上,当储能式电操与大壳架断路器连接时,将连接板拆除,使第一凹槽与大壳架断路器支架上的第二定位特征对应即可。Further, the bracket of the large-frame circuit breaker is arranged on the first groove through the second positioning feature, and when the energy storage electric operation is connected to the large-frame circuit breaker, the connecting plate is removed, so that the first groove is connected to the circuit breaker. The second positioning feature on the bracket of the large-frame circuit breaker can correspond.

通过上述技术方案,本实用新型具有以下技术效果:通过在储能式电操上加设连接板,当需要设置在小壳架断路器上时,通过连接板上的第二凹槽与第二定位特征连接;当需要设置在大壳架断路器上时,拆除连接板,通过第一凹槽与第二定位特征直接连接。使一种规格的储能式电操能够安装在两种塑壳断路器上,提高了储能式电操的通用性。Through the above technical solutions, the present utility model has the following technical effects: by adding a connecting plate on the energy storage type electric operation, when it needs to be set on the small frame circuit breaker, through the second groove on the connecting plate and the second The positioning feature is connected; when it needs to be set on the large frame circuit breaker, the connecting plate is removed, and the second positioning feature is directly connected through the first groove. The energy storage electric operation of one specification can be installed on two kinds of molded case circuit breakers, which improves the versatility of the energy storage electric operation.

附图说明Description of drawings

图1为本实用新型整体结构示意图;Fig. 1 is the overall structure schematic diagram of the present utility model;

图2为本实用新型的小壳架断路器支架以及大壳架断路器支架的结构示意图;2 is a schematic structural diagram of a small frame circuit breaker support and a large frame circuit breaker support of the present invention;

图3为本实用新型的横梁结构示意图;3 is a schematic diagram of a beam structure of the present utility model;

图4为本实用新型的连接板结构示意图;4 is a schematic structural diagram of a connecting plate of the present invention;

图5为本实用新型小壳架断路器支架与储能式电操连接示意图。FIG. 5 is a schematic diagram of the connection between the bracket of the small frame circuit breaker and the energy storage type electric operation of the present invention.

具体实施方式Detailed ways

下面将结合附图对本实用新型方案的实施例进行详细地描述。以下实施例仅用于更加清楚地说明本实用新型的技术方案,因此只作为示例,而不能以此来限制本实用新型的保护范围。The embodiments of the solution of the present invention will be described in detail below with reference to the accompanying drawings. The following embodiments are only used to illustrate the technical solutions of the present invention more clearly, and are therefore only used as examples, and cannot be used to limit the protection scope of the present invention.

在本实用新型的最优选实施例中,提供了一种储能式电操定位机构,包括储能式电操左侧板1、储能式电操右侧板2、横梁3、连接板4、小壳架断路器支架5、大壳架断路器支架6、螺栓7,所述横梁3设置在储能式电操左侧板1和储能式电操右侧板2之间,所述连接板4与横梁3连接,所述储能式电操左侧板1和储能式电操右侧板2上设置有第一凹槽11,所述连接板4上设置有第二凹槽41。所述储能式电操左侧板1和储能式电操右侧板2上还设置有横梁安装孔12。所述横梁3上设置有两个螺纹孔31且两端设置有凸起32,所述横梁3通过凸起32设置在横梁安装孔12上。所述连接板4上设置有两个通孔42且两侧设置有第一定位特征43。所述螺栓7具有两个。所述连接板4的第一定位特征43设置在第一凹槽11内。所述连接板4通过螺栓7设置在横梁3的螺纹孔31上。所述小壳架断路器支架5、大壳架断路器支架6上设置有第二定位特征51。所述小壳架断路器支架5通过第二定位特征51设置在第二凹槽41上。所述大壳架断路器支架6通过第二定位特征51设置在第一凹槽11上。In the most preferred embodiment of the present utility model, an energy storage type electric operation positioning mechanism is provided, including an energy storage type electric operation left side plate 1 , an energy storage type electric operation right side plate 2 , a beam 3 , and a connecting plate 4 , a small frame circuit breaker bracket 5, a large frame circuit breaker bracket 6, and a bolt 7, the beam 3 is arranged between the left side plate 1 of the energy storage type electric operation and the right side plate 2 of the energy storage type electric operation. The connecting plate 4 is connected with the beam 3, a first groove 11 is provided on the left side plate 1 of the energy storage type electric operation and the right side plate 2 of the energy storage type electric operation, and a second groove is provided on the connecting plate 4 41. The left side plate 1 of the energy storage type electric operation and the right side plate 2 of the energy storage type electric operation are also provided with beam mounting holes 12 . The beam 3 is provided with two threaded holes 31 and both ends are provided with protrusions 32 , and the beam 3 is disposed on the beam mounting hole 12 through the protrusions 32 . Two through holes 42 are provided on the connecting plate 4 and first positioning features 43 are provided on both sides. The bolts 7 have two. The first positioning feature 43 of the connecting plate 4 is arranged in the first groove 11 . The connecting plate 4 is arranged on the threaded hole 31 of the beam 3 through the bolt 7 . Second positioning features 51 are provided on the small frame circuit breaker bracket 5 and the large frame circuit breaker bracket 6 . The small frame circuit breaker bracket 5 is arranged on the second groove 41 through the second positioning feature 51 . The large frame circuit breaker bracket 6 is disposed on the first groove 11 through the second positioning feature 51 .

本实施例的工作原理如下:The working principle of this embodiment is as follows:

当需要储能式电操设置在小壳架断路器中时,将连接板4通过螺栓7设置在横梁3上,此时连接板4上的第二凹槽41设置在小壳架断路器支架5的第二定位特征51上即可;When the energy storage type electric operation needs to be arranged in the small frame circuit breaker, the connecting plate 4 is set on the beam 3 through the bolts 7, and the second groove 41 on the connecting plate 4 is arranged on the bracket of the small frame circuit breaker. 5 on the second positioning feature 51;

当需要储能式电操设置在大壳架断路器中时,将螺栓7拧下,拆除连接板4,此时储能式电操左侧板1和储能式电操右侧板2上的第一凹槽11设置在大壳架断路器支架6的第二定位特征51上即可。When it is necessary to set the energy storage type electric operation in the large frame circuit breaker, unscrew the bolt 7 and remove the connecting plate 4. At this time, the left side plate 1 of the energy storage type electric operation and the right side plate 2 of the energy storage type electric operation are on the The first groove 11 can be arranged on the second positioning feature 51 of the large frame circuit breaker bracket 6 .

以上所述,仅为本实用新型较佳的具体实施方式,但本实用新型的保护范围并不局限于此,任何熟悉本技术领域的技术人员在本实用新型揭露的技术范围内,根据本实用新型的技术方案及其实用新型构思加以等同替换或改变,都应涵盖在本实用新型的保护范围之内。The above are only the preferred specific embodiments of the present invention, but the protection scope of the present invention is not limited to this. Equivalent replacement or modification of the new technical solution and its utility model concept shall be included within the protection scope of the present utility model.

Claims (10)

1.一种储能式电操定位机构,其特征在于:包括储能式电操左侧板(1)、储能式电操右侧板(2)、横梁(3)、连接板(4)、小壳架断路器支架(5)、大壳架断路器支架(6)、螺栓(7),所述横梁(3)设置在储能式电操左侧板(1)和储能式电操右侧板(2)之间,所述连接板(4)与横梁(3)连接,所述储能式电操左侧板(1)和储能式电操右侧板(2)上设置有第一凹槽(11),所述连接板(4)上设置有第二凹槽(41)。1. An energy storage type electric operation positioning mechanism is characterized in that: comprising an energy storage type electric operation left side plate (1), an energy storage type electric operation right side plate (2), a beam (3), a connecting plate (4) ), a small frame circuit breaker bracket (5), a large frame circuit breaker bracket (6), bolts (7), the beam (3) is arranged on the left side plate (1) of the energy storage type electric operation and the energy storage type Between the right side plates (2) of the electric operation, the connecting plate (4) is connected with the beam (3), the left side plate (1) of the energy storage type electric operation and the right side plate (2) of the energy storage type electric operation A first groove (11) is provided on the connecting plate (4), and a second groove (41) is provided on the connecting plate (4). 2.根据权利要求1所述的一种储能式电操定位机构,其特征在于:所述储能式电操左侧板(1)和储能式电操右侧板(2)上还设置有横梁安装孔(12)。2. A kind of energy storage type electric operation positioning mechanism according to claim 1, it is characterized in that: the left side plate (1) of described energy storage type electric operation and the energy storage type electric operation right side plate (2) are also A beam mounting hole (12) is provided. 3.根据权利要求1所述的一种储能式电操定位机构,其特征在于:所述横梁(3)上设置有两个螺纹孔(31)且两端设置有凸起(32),所述横梁(3)通过凸起(32)设置在横梁安装孔(12)上。3. An energy storage type electric operating positioning mechanism according to claim 1, characterized in that: the beam (3) is provided with two threaded holes (31) and both ends are provided with protrusions (32), The beam (3) is arranged on the beam mounting hole (12) through a protrusion (32). 4.根据权利要求1所述的一种储能式电操定位机构,其特征在于:所述连接板(4)上设置有两个通孔(42)且两侧设置有第一定位特征(43)。4. An energy storage type electric operating positioning mechanism according to claim 1, characterized in that: the connecting plate (4) is provided with two through holes (42) and both sides are provided with a first positioning feature ( 43). 5.根据权利要求1所述的一种储能式电操定位机构,其特征在于:所述螺栓(7)具有两个。5. An energy storage type electric operating positioning mechanism according to claim 1, characterized in that: there are two said bolts (7). 6.根据权利要求1所述的一种储能式电操定位机构,其特征在于:所述连接板(4)的第一定位特征(43)设置在第一凹槽(11)内。6 . The energy storage type electric operating positioning mechanism according to claim 1 , wherein the first positioning feature ( 43 ) of the connecting plate ( 4 ) is arranged in the first groove ( 11 ). 7 . 7.根据权利要求1所述的一种储能式电操定位机构,其特征在于:所述连接板(4)通过螺栓(7)设置在横梁(3)的螺纹孔(31)上。7 . An energy storage type electric operating positioning mechanism according to claim 1 , wherein the connecting plate ( 4 ) is arranged on the threaded hole ( 31 ) of the beam ( 3 ) through bolts ( 7 ). 8 . 8.根据权利要求1所述的一种储能式电操定位机构,其特征在于:所述小壳架断路器支架(5)、大壳架断路器支架(6)上设置有第二定位特征(51)。8. An energy storage type electric operation positioning mechanism according to claim 1, characterized in that: a second positioning device is provided on the small frame circuit breaker bracket (5) and the large frame circuit breaker bracket (6). feature (51). 9.根据权利要求1所述的一种储能式电操定位机构,其特征在于:所述小壳架断路器支架(5)通过第二定位特征(51)设置在第二凹槽(41)上。9. An energy storage type electric operation positioning mechanism according to claim 1, characterized in that: the small frame circuit breaker bracket (5) is arranged in the second groove (41) through the second positioning feature (51). )superior. 10.根据权利要求1所述的一种储能式电操定位机构,其特征在于:所述大壳架断路器支架(6)通过第二定位特征(51)设置在第一凹槽(11)上。10. An energy storage type electric operating positioning mechanism according to claim 1, characterized in that: the large frame circuit breaker bracket (6) is arranged in the first groove (11) through the second positioning feature (51). )superior.
CN202220079011.3U 2022-01-13 2022-01-13 Energy storage type electric operation positioning mechanism Active CN216698124U (en)

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